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Discontinuous Galerkin Method - Analysis and Applications to Compressible Flow (Hardcover, 1st ed. 2015): Vit Dolejsi, Miloslav... Discontinuous Galerkin Method - Analysis and Applications to Compressible Flow (Hardcover, 1st ed. 2015)
Vit Dolejsi, Miloslav Feistauer
R4,357 Discovery Miles 43 570 Ships in 10 - 15 working days

The subject of the book is the mathematical theory of the discontinuous Galerkin method (DGM), which is a relatively new technique for the numerical solution of partial differential equations. The book is concerned with the DGM developed for elliptic and parabolic equations and its applications to the numerical simulation of compressible flow. It deals with the theoretical as well as practical aspects of the DGM and treats the basic concepts and ideas of the DGM, as well as the latest significant findings and achievements in this area. The main benefit for readers and the book's uniqueness lie in the fact that it is sufficiently detailed, extensive and mathematically precise, while at the same time providing a comprehensible guide through a wide spectrum of discontinuous Galerkin techniques and a survey of the latest efficient, accurate and robust discontinuous Galerkin schemes for the solution of compressible flow.

Anisotropic hp-Mesh Adaptation Methods - Theory, implementation and applications (Paperback, 1st ed. 2022): Vit Dolejsi, Georg... Anisotropic hp-Mesh Adaptation Methods - Theory, implementation and applications (Paperback, 1st ed. 2022)
Vit Dolejsi, Georg May
R2,418 Discovery Miles 24 180 Ships in 18 - 22 working days

Mesh adaptation methods can have a profound impact on the numerical solution of partial differential equations. If devised and implemented properly, adaptation significantly reduces the size of the algebraic systems resulting from the discretization, while ensuring that applicable error tolerances are met. In this monograph, drawing from many years of experience, the authors give a comprehensive presentation of metric-based anisotropic hp-mesh adaptation methods. A large part of this monograph is devoted to the derivation of computable interpolation error estimates on simplicial meshes, which take into account the geometry of mesh elements as well as the anisotropic features of the interpolated function. These estimates are then used for the optimization of corresponding finite element spaces in a variety of settings. Both steady and time dependent problems are treated, as well as goal-oriented adaptation. Practical aspects of implementation are also explored, including several algorithms. Many numerical experiments using the discontinuous Galerkin method are presented to illustrate the performance of the adaptive techniques. This monograph is intended for scientists and researchers, including doctoral and master-level students. Portions of the text can also be used as study material for advanced university lectures concerning a posteriori error analysis and mesh adaptation.

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